AGN STORM 2. VIII. Investigating the Narrow Absorption Lines in Mrk 817 Using HST-COS Observations*

Author:

Dehghanian MaryamORCID,Arav NahumORCID,Kriss Gerard A.ORCID,Mehdipour MissaghORCID,Byun DoyeeORCID,Walker GwenORCID,Sharma MayankORCID,Barth Aaron J.ORCID,Bentz Misty C.ORCID,Boizelle Benjamin D.ORCID,Brotherton Michael S.ORCID,Cackett Edward M.ORCID,Dalla Bontà ElenaORCID,De Rosa GisellaORCID,Ferland Gary J.ORCID,Fian CarinaORCID,Filippenko Alexei V.ORCID,Gelbord JonathanORCID,Goad Michael R.ORCID,Horne KeithORCID,Homayouni YasamanORCID,Ilić DraganaORCID,Joner Michael D.ORCID,Kara Erin A.ORCID,Kaspi ShaiORCID,Kochanek Christopher S.ORCID,Korista Kirk T.ORCID,Kosec PeterORCID,Kovačević Andjelka B.ORCID,Landt HermineORCID,Lewin CollinORCID,Partington Ethan R.ORCID,Popović Luka Č.ORCID,Proga DanielORCID,Rogantini DanieleORCID,Siebert Matthew R.,Storchi-Bergmann ThaisaORCID,Vestergaard MarianneORCID,Waters Timothy.ORCID,Wang Jian-MinORCID,Zaidouni FatimaORCID,Zu YingORCID

Abstract

Abstract We observed the Seyfert 1 galaxy Mrk 817 during an intensive multiwavelength reverberation mapping campaign for 16 months. Here, we examine the behavior of narrow UV absorption lines seen in the Hubble Space Telescope/Cosmic Origins Spectrograph spectra, both during the campaign and in other epochs extending over 14 yr. We conclude that, while the narrow absorption outflow system (at −3750 km s−1 with FWHM = 177 km s−1) responds to the variations of the UV continuum as modified by the X-ray obscurer, its total column density (log N H = 19.5 0.13 + 0.61 cm−2) did not change across all epochs. The adjusted ionization parameter (scaled with respect to the variations in the hydrogen-ionizing continuum flux) is log U H = −1.0 0.3 + 0.1 . The outflow is located at a distance smaller than 38 pc from the central source, which implies a hydrogen density of n H > 3000 cm−3. The absorption outflow system only covers the continuum emission source and not the broad emission line region, which suggests that its transverse size is small (< 1016 cm), with potential cloud geometries ranging from spherical to elongated along the line of sight.

Funder

Space Telescope Science Institute

Publisher

American Astronomical Society

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